TPMS具有的极其光滑的表面和无限周期结构,使其能够避免应力集中并提供低流动阻力,促进了TPMS结构在换热器中的应用。本文以Diamond结构为例,基于fluent对双流体换热过程进行数值模拟,研究其换热性能。 一、物理模型构建 1、单元格及封头 Diamond结构的曲面方程为:sin(X)sin(Y)sin(Z)+sin(X)cos(Y)cos(Z)+sin(Y)c...
TPMS_N曲面与Diamond曲面一键融合软件是由吉林大学著作的软件著作,该软件著作登记号为:2024SR0517149,属于分类,想要查询更多关于TPMS_N曲面与Diamond曲面一键融合软件著作的著作权信息就到天眼查官网!
Herein, the mechanical behavior of the most two promising designs of both families is investigated experimentally and using finite-element analysis (FEA), namely sheet-based diamond TPMS and simple cubic–face-centered cubic–body-centered cubic (SC-FCC-BCC) plate-lattice. Fused deposition modeling ...
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However, TPMS porous structure of C/SiC cannot be manufactured through pre-existing lamination and three-dimensional weaving. In this study, three types of SiC composites (diamond/SiC, carbon fiber/SiC, and SiC) with TPMS structures were fabricated using digital light processing (DLP). The ...
This study investigates the enhancement of convective heat transfer in Triply Periodic Minimal Surfaces (TPMS), focusing on Gyroid and Diamond lattice structures. An innovative lattice structure control method, employing a Deform-Control parameter ( β ), is proposed to modulate lattice deformation ...